Articles | Volume 26, issue 16
https://doi.org/10.5194/acp-26-12197-2026
https://doi.org/10.5194/acp-26-12197-2026
Research article
 | 
28 Aug 2026
Research article |  | 28 Aug 2026

Contrasting nighttime heterogeneous and daytime photochemical aging drive the optical evolution of black carbon

Yin Zhang, Jinghao Zhai, Yaling Zeng, Shao Shi, Baohua Cai, Ke Yang, Yu Yan, Xin Yuan, Tianlong Hu, Chen Wang, Tzung-May Fu, Lei Zhu, Huizhong Shen, Jianhuai Ye, and Xin Yang

Related authors

Source-dependent optical properties and molecular characteristics of atmospheric brown carbon
Jinghao Zhai, Yin Zhang, Pengfei Liu, Yujie Zhang, Antai Zhang, Yaling Zeng, Baohua Cai, Jingyi Zhang, Chunbo Xing, Honglong Yang, Xiaofei Wang, Jianhuai Ye, Chen Wang, Tzung-May Fu, Lei Zhu, Huizhong Shen, Shu Tao, and Xin Yang
Atmos. Chem. Phys., 25, 7959–7972, https://doi.org/10.5194/acp-25-7959-2025,https://doi.org/10.5194/acp-25-7959-2025, 2025
Short summary

Cited articles

Asmi, E., Sipkens, T. A., Saturno, J., Backman, J., Vasilatou, K., Weingartner, E., Keller, A., Ciupek, K., Müller, T., Babu Suja, A., Močnik, G., Drinovec, L., Eleftheriadis, K., Gini, M. I., Nowak, A., and Corbin, J. C.: Mass absorption cross-section of ambient black carbon aerosols - a review, npj Climate and Atmospheric Science, 9, 17, https://doi.org/10.1038/s41612-025-01288-2, 2025. a
Baumgartner, J., Zhang, Y., Schauer, J. J., Huang, W., Wang, Y., and Ezzati, M.: Highway proximity and black carbon from cookstoves as a risk factor for higher blood pressure in rural China, P. Natl. Acad. Sci. USA, 111, 13229–13234, https://doi.org/10.1073/pnas.1317176111, 2014. a
Bond, T. C. and Bergstrom, R. W.: Light Absorption by Carbonaceous Particles: An Investigative Review, Aerosol Sci. Technol., 40, 27–67, https://doi.org/10.1080/02786820500421521, 2006. a, b, c
Bond, T. C., Doherty, S. J., Fahey, D. W., Forster, P. M., Berntsen, T., DeAngelo, B. J., Flanner, M. G., Ghan, S., Kärcher, B., Koch, D., Kinne, S., Kondo, Y., Quinn, P. K., Sarofim, M. C., Schultz, M. G., Schulz, M., Venkataraman, C., Zhang, H., Zhang, S., Bellouin, N., Guttikunda, S. K., Hopke, P. K., Jacobson, M. Z., Kaiser, J. W., Klimont, Z., Lohmann, U., Schwarz, J. P., Shindell, D., Storelvmo, T., Warren, S. G., and Zender, C. S.: Bounding the role of black carbon in the climate system: A scientific assessment, J. Geophys. Res.-Atmos., 118, 5380–5552, https://doi.org/10.1002/jgrd.50171, 2013. a, b
Cappa, C. D., Onasch, T. B., Massoli, P., Worsnop, D. R., Bates, T. S., Cross, E. S., Davidovits, P., Hakala, J., Hayden, K. L., Jobson, B. T., Kolesar, K. R., Lack, D. A., Lerner, B. M., Li, S.-M., Mellon, D., Nuaaman, I., Olfert, J. S., Petäjä, T., Quinn, P. K., Song, C., Subramanian, R., Williams, E. J., and Zaveri, R. A.: Radiative Absorption Enhancements Due to the Mixing State of Atmospheric Black Carbon, Science, 337, 1078–1081, https://doi.org/10.1126/science.1223447, 2012. a, b, c, d
Download
Short summary
Black carbon warms our climate, but its atmospheric changes remain unclear. We measured individual urban particles with advanced instruments to track this process. We found that black carbon ages through distinct chemical reactions at night versus sunlight-driven processes during the day. Both pathways coat the particles, significantly increasing their ability to absorb light. This helps accurately predict their warming effects.
Share
Altmetrics
Final-revised paper
Preprint